mirror of
https://github.com/sparrowwallet/drongo.git
synced 2024-11-02 18:26:43 +00:00
implementation of secp256k1-jdk 0.0.1
This commit is contained in:
parent
0e08478294
commit
14a1a4ec8f
9 changed files with 98 additions and 43 deletions
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@ -24,9 +24,15 @@ if(os.macOsX) {
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repositories {
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mavenCentral()
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flatDir {
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dirs 'libs'
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}
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}
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dependencies {
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implementation files('libs/secp-api-0.0.1.jar')
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implementation files('libs/secp-ffm-0.0.1.jar')
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implementation ('org.jspecify:jspecify:1.0.0')
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implementation ('com.googlecode.json-simple:json-simple:1.1.1') {
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exclude group: 'junit', module: 'junit'
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}
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BIN
libs/secp-api-0.0.1.jar
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libs/secp-api-0.0.1.jar
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libs/secp-ffm-0.0.1.jar
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libs/secp-ffm-0.0.1.jar
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@ -1,12 +1,13 @@
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package com.sparrowwallet.drongo.crypto;
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import com.sparrowwallet.drongo.Utils;
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import com.sparrowwallet.drongo.protocol.SigHash;
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import com.sparrowwallet.drongo.protocol.SignatureDecodeException;
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import com.sparrowwallet.drongo.protocol.TransactionSignature;
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import com.sparrowwallet.drongo.protocol.VerificationException;
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import org.bitcoin.Secp256k1Context;
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import org.bitcoinj.secp.api.*;
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import org.bouncycastle.asn1.*;
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import org.bouncycastle.crypto.params.ECPublicKeyParameters;
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import org.bouncycastle.crypto.signers.ECDSASigner;
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import org.bouncycastle.util.Properties;
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import org.slf4j.Logger;
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import org.slf4j.LoggerFactory;
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@ -131,15 +132,16 @@ public class ECDSASignature {
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* @param pub The public key bytes to use.
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*/
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public boolean verify(byte[] data, byte[] pub) {
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ECDSASigner signer = new ECDSASigner();
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ECPublicKeyParameters params = new ECPublicKeyParameters(CURVE.getCurve().decodePoint(pub), CURVE);
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signer.init(false, params);
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try {
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return signer.verifySignature(data, r, s);
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} catch (NullPointerException e) {
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// Bouncy Castle contains a bug that can cause NPEs given specially crafted signatures. Those signatures
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// are inherently invalid/attack sigs so we just fail them here rather than crash the thread.
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log.error("Caught NPE inside bouncy castle", e);
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if(!Secp256k1Context.isEnabled()) {
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throw new IllegalStateException("libsecp256k1 is not enabled");
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}
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try(Secp256k1 secp = Secp256k1.get()) {
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byte[] sigBytes = Utils.concat(Utils.bigIntegerToBytes(r, 32), Utils.bigIntegerToBytes(s, 32));
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SignatureData sig = secp.ecdsaSignatureParseCompact(() -> sigBytes).get();
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return secp.ecdsaVerify(sig, data, secp.ecPubKeyParse(() -> pub).get()).get();
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} catch(Exception e) {
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log.error("Error verifying ecdsa", e);
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return false;
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}
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}
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@ -2,9 +2,8 @@ package com.sparrowwallet.drongo.crypto;
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import com.sparrowwallet.drongo.Utils;
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import com.sparrowwallet.drongo.protocol.*;
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import org.bitcoin.NativeSecp256k1;
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import org.bitcoin.NativeSecp256k1Util;
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import org.bitcoin.Secp256k1Context;
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import org.bitcoinj.secp.api.*;
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import org.bouncycastle.asn1.*;
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import org.bouncycastle.asn1.x9.X9ECParameters;
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import org.bouncycastle.asn1.x9.X9IntegerConverter;
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@ -280,11 +279,11 @@ public class ECKey {
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}
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if(Secp256k1Context.isEnabled()) {
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try {
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byte[] pubKeyBytes = NativeSecp256k1.computePubkey(Utils.bigIntegerToBytes(privKey, 32), false);
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LazyECPoint lazyECPoint = new LazyECPoint(CURVE.getCurve(), pubKeyBytes);
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try(Secp256k1 secp = Secp256k1.get()) {
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P256k1PubKey pubkey = secp.ecPubKeyCreate(new BigIntegerP256k1PrivKey(privKey));
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LazyECPoint lazyECPoint = new LazyECPoint(CURVE.getCurve(), pubkey.getCompressed());
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return lazyECPoint.get();
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} catch(NativeSecp256k1Util.AssertFailException e) {
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} catch(Exception e) {
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log.error("Error computing public key from private", e);
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}
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}
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@ -385,16 +384,34 @@ public class ECKey {
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throw new IllegalArgumentException("Private key cannot be null");
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}
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ECDSASignature signature;
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if(!Secp256k1Context.isEnabled()) {
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throw new IllegalStateException("libsecp256k1 is not enabled");
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}
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ECDSASignature signature = null;
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Integer counter = null;
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do {
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ECDSASigner signer = new ECDSASigner(new HMacDSANonceKCalculator(new SHA256Digest(), counter));
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ECPrivateKeyParameters privKey = new ECPrivateKeyParameters(priv, CURVE);
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signer.init(true, privKey);
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BigInteger[] components = signer.generateSignature(input.getBytes());
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signature = new ECDSASignature(components[0], components[1]).toCanonicalised();
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counter = (counter == null ? 1 : counter+1);
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} while(!signature.hasLowR());
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try(Secp256k1 secp = Secp256k1.get()) {
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do {
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ECDSASigner signer = new ECDSASigner(new HMacDSANonceKCalculator(new SHA256Digest(), counter));
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ECPrivateKeyParameters privKey = new ECPrivateKeyParameters(priv, CURVE);
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signer.init(true, privKey);
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BigInteger[] components = signer.generateSignature(input.getBytes());
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signature = new ECDSASignature(components[0], components[1]).toCanonicalised();
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//No way to specify counter as a parameter while grinding for low R
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SignatureData sig = secp.ecdsaSign(input.getBytes(), new BigIntegerP256k1PrivKey(priv)).get();
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CompressedSignatureData serialized_signature = secp.ecdsaSignatureSerializeCompact(sig).get();
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BigInteger r = new BigInteger(1, Arrays.copyOfRange(serialized_signature.bytes(), 0, 32));
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BigInteger s = new BigInteger(1, Arrays.copyOfRange(serialized_signature.bytes(),32, 64));
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ECDSASignature signature2 = new ECDSASignature(r, s);
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if(!signature.equals(signature2)) {
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System.out.println("Signatures not equal " + signature.hasLowR() + " " + signature2.hasLowR() + " " + counter);
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}
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counter = (counter == null ? 1 : counter + 1);
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} while(!signature.hasLowR());
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} catch(Exception e) {
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log.error("Error signing ecdsa", e);
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}
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return signature;
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}
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@ -411,10 +428,10 @@ public class ECKey {
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throw new IllegalStateException("libsecp256k1 is not enabled");
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}
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try {
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byte[] sigBytes = NativeSecp256k1.schnorrSign(input.getBytes(), Utils.bigIntegerToBytes(priv, 32), new byte[32]);
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try(Secp256k1 secp = Secp256k1.get()) {
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byte[] sigBytes = secp.schnorrSigSign32(input.getBytes(), secp.ecKeyPairCreate(new BigIntegerP256k1PrivKey(priv)));
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return SchnorrSignature.decode(sigBytes);
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} catch(NativeSecp256k1Util.AssertFailException e) {
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} catch(Exception e) {
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log.error("Error signing schnorr", e);
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}
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@ -883,4 +900,22 @@ public class ECKey {
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public interface ECDSAHashSigner {
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ECDSASignature sign(Sha256Hash hash);
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}
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private static class BigIntegerP256k1PrivKey implements P256k1PrivKey {
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private final BigInteger privKey;
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public BigIntegerP256k1PrivKey(BigInteger privKey) {
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this.privKey = privKey;
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}
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@Override
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public byte[] getEncoded() {
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return Utils.bigIntegerToBytes(privKey, 32);
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}
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@Override
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public void destroy() {
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}
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}
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}
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@ -2,9 +2,10 @@ package com.sparrowwallet.drongo.crypto;
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import com.sparrowwallet.drongo.Utils;
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import com.sparrowwallet.drongo.protocol.TransactionSignature;
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import org.bitcoin.NativeSecp256k1;
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import org.bitcoin.NativeSecp256k1Util;
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import org.bitcoin.Secp256k1Context;
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import org.bitcoinj.secp.api.P256K1XOnlyPubKey;
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import org.bitcoinj.secp.api.Result;
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import org.bitcoinj.secp.api.Secp256k1;
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import org.slf4j.Logger;
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import org.slf4j.LoggerFactory;
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@ -70,9 +71,9 @@ public class SchnorrSignature {
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throw new IllegalStateException("libsecp256k1 is not enabled");
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}
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try {
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return NativeSecp256k1.schnorrVerify(encode(), data, pub);
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} catch(NativeSecp256k1Util.AssertFailException e) {
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try(Secp256k1 secp = Secp256k1.get()) {
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return secp.schnorrSigVerify(encode(), data, new ByteArrayP256K1XOnlyPubKey(pub)).get();
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} catch(Exception e) {
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log.error("Error verifying schnorr signature", e);
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}
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@ -95,4 +96,22 @@ public class SchnorrSignature {
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public int hashCode() {
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return Objects.hash(r, s);
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}
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private static class ByteArrayP256K1XOnlyPubKey implements P256K1XOnlyPubKey {
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private final byte[] pub;
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public ByteArrayP256K1XOnlyPubKey(byte[] pub) {
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this.pub = pub;
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}
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@Override
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public BigInteger getX() {
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return new BigInteger(1, pub);
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}
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@Override
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public byte[] getSerialized() {
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return pub;
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}
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}
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}
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@ -7,6 +7,7 @@ open module com.sparrowwallet.drongo {
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requires ch.qos.logback.core;
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requires ch.qos.logback.classic;
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requires json.simple;
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requires org.bitcoinj.secp.api;
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exports com.sparrowwallet.drongo;
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exports com.sparrowwallet.drongo.psbt;
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exports com.sparrowwallet.drongo.protocol;
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@ -9,17 +9,11 @@ import java.io.IOException;
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public class Secp256k1Context {
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private static final boolean enabled; // true if the library is loaded
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private static final long context; // ref to pointer to context obj
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private static final Logger log = LoggerFactory.getLogger(Secp256k1Context.class);
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static { // static initializer
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enabled = loadLibrary();
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if(enabled) {
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context = secp256k1_init_context();
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} else {
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context = -1;
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}
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}
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public static boolean isEnabled() {
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public static long getContext() {
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if (!enabled)
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return -1; // sanity check
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return context;
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throw new UnsupportedOperationException();
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}
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private static boolean loadLibrary() {
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return false;
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}
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private static native long secp256k1_init_context();
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}
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